首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Variation of Froude number versus depth during the passage of internal solitary waves from the in-situ observation and a numerical model
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Variation of Froude number versus depth during the passage of internal solitary waves from the in-situ observation and a numerical model

机译:实地观测和数值模型在内部孤波通过过程中弗洛德数随深度的变化

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摘要

There are few studies on the variation of Froude number versus depth during the passage of internal solitary waves (ISWs). In this paper, according to the limited observational data of the ISWs near the Dongsha Islands in the northern South China Sea (SCS), it is found that, during the passage of an ISW, the local Froude number near the main thermocline gets maximum and the flow is supercritical, with the Froude number decreasing gradually upward and downward, whilst before and after the passage of the ISW, the local Froude number is less than 1 and the flow is subcritical in the entire water column. Since the observational current data are only available in the upper ocean, a two-dimensional continuously stratified nonlinear model is employed here to study the variation of Froude number versus depth during the passage of an ISW. The modeled ISW induced current field agrees well with that observed during the passage of the observational ISW. It is found that, even during the passage of the ISW, although the Froude number is larger than 1 in the upper layer, it is less than 1 in the lower layer, and the duration when the Froude number is larger than 1 also changes with depth. Thus, it is suggested that, once the Froude number near the main thermocline is larger than 1, the passage of ISWs could be identified. Moreover, it would be better to choose a sampling interval of no more than 1/4 passage period of the ISW during an in-situ observation of ISWs.
机译:在内部孤立波(ISW)通过期间,弗洛德数随深度变化的研究很少。本文根据南海北部东沙群岛附近的ISW的有限观测数据,发现在ISW通过期间,主温跃层附近的局部Froude数最大,而流量是超临界的,弗洛德数在上下方向上逐渐减小,而在ISW通过之前和之后,局部弗洛德数小于1,并且在整个水柱中流量都是亚临界的。由于目前的观测数据仅在上层海洋中可用,因此这里采用二维连续分层非线性模型研究ISW通过期间弗洛德数随深度的变化。建模的ISW感应电流场与观测性ISW通过期间观测到的场非常吻合。发现即使在ISW通过的过程中,尽管上层的Froude数大于1,但在下层中的Froude数小于1,并且Froude数大于1的持续时间也随深度。因此,建议一旦主温跃层附近的弗洛德数大于1,就可以确定ISW的通过。此外,最好在原位观察ISW的过程中选择不超过ISW的1/4通过时间的采样间隔。

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